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首页> 外文期刊>Frontiers in Immunology >Rapid, Automated, and Specific Immunoassay to Directly Measure Matrix Metalloproteinase-9–Tissue Inhibitor of Metalloproteinase-1 Interactions in Human Plasma Using AlphaLISA Technology: A New Alternative to Classical ELISA
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Rapid, Automated, and Specific Immunoassay to Directly Measure Matrix Metalloproteinase-9–Tissue Inhibitor of Metalloproteinase-1 Interactions in Human Plasma Using AlphaLISA Technology: A New Alternative to Classical ELISA

机译:快速,自动化,特异性免疫测定法使用AlphaLISA技术直接测量人血浆中金属蛋白酶-1相互作用的基质金属蛋白酶9组织抑制剂:经典ELISA的新选择

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摘要

The protocol describes a novel, rapid, and no-wash one-step immunoassay for highly sensitive and direct detection of the complexes between matrix metalloproteinases (MMPs) and their tissue inhibitor of metalloproteinases (TIMPs) based on AlphaLISA? technology. We describe two procedures: (i) one approach is used to analyze MMP-9–TIMP-1 interactions using recombinant human MMP-9 with its corresponding recombinant human TIMP-1 inhibitor and (ii) the second approach is used to analyze native or endogenous MMP-9–TIMP-1 protein interactions in samples of human plasma. Evaluating native MMP-9–TIMP-1 complexes using this approach avoids the use of indirect calculations of the MMP-9/TIMP-1 ratio for which independent MMP-9 and TIMP-1 quantifications by two conventional ELISAs are needed. The MMP-9–TIMP-1 AlphaLISA? assay is quick, highly simplified, and cost-effective and can be completed in less than 3 h. Moreover, the assay has great potential for use in basic and preclinical research as it allows direct determination of native MMP-9–TIMP-1 complexes in circulating blood as biofluid.
机译:该协议描述了一种新颖,快速,免洗的一步免疫测定法,可基于AlphaLISA®对基质金属蛋白酶(MMPs)及其金属蛋白酶组织抑制剂(TIMPs)之间的复合物进行高灵敏度和直接检测。技术。我们描述了两种方法:(i)一种方法用于使用重组人MMP-9及其相应的重组人TIMP-1抑制剂来分析MMP-9–TIMP-1相互作用,(ii)第二种方法用于分析天然或人体血浆样品中的内源性MMP-9–TIMP-1蛋白相互作用。使用这种方法评估天然MMP-9–TIMP-1复合物可避免使用间接计算MMP-9 / TIMP-1比率的方法,为此,需要通过两种常规ELISA进行独立的MMP-9和TIMP-1定量。 MMP-9–TIMP-1 AlphaLISA?测定快速,高度简化且具有成本效益,可以在不到3小时内完成。此外,该测定法可以直接测定循环血中作为生物流体的天然MMP-9–TIMP-1复合物,因此在基础和临床前研究中具有巨大的潜力。

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